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Solution Structures of a DNA Dodecamer Duplex with and without a Cisplatin 12-d(GG) Intrastrand Cross-Link: Comparison with the Same DNA Duplex Containing an Oxaliplatin 12-d(GG) Intrastrand Cross-Link

机译:具有和不具有顺铂12-d(GG)内链交联的DNA Dodecamer双链体的溶液结构:与包含奥沙利铂12-d(GG)内链交联的相同DNA双链体的比较

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摘要

Proteins that discriminate between cisplatin–DNA adducts and oxaliplatin–DNA adducts are thought to be responsible for the differences in tumor range, toxicity, and mutagenicity of these two important chemotherapeutic agents. However, the structural basis for differential protein recognition of these adducts has not been determined and could be important for the design of more effective platinum anticancer agents. We have determined high-resolution NMR structures for cisplatin–GG and undamaged DNA dodecamers in the AGGC sequence context and have compared these structures with the oxaliplatin–GG structure in the same sequence context determined previously in our laboratory. This structural study allows the first direct comparison of cisplatin–GG DNA and oxaliplatin–GG DNA solution structures referenced to undamaged DNA in the same sequence context. Non-hydrogen atom rmsds of 0.81 and 1.21 were determined for the 15 lowest-energy structures for cisplatin–GG DNA and undamaged DNA, respectively, indicating good structural convergence. The theoretical NOESY spectra obtained by back-calculation from the final average structures showed excellent agreement with the experimental data, indicating that the final structures are consistent with the NMR data. Several significant conformational differences were observed between the cisplatin–GG adduct and the oxaliplatin–GG adduct, including buckle at the 5′ G6•C19 base pair, opening at the 3′ G7•C18 base pair, twist at the A5G6•T20C19 base pair step, slide, twist, and roll at the G6G7•C19C18 base pair step, slide at the G7C8•C18G17 base pair step, G6G7 dihedral angle, and overall bend angle. We hypothesize that these conformational differences may be related to the ability of various DNA repair proteins, DNA binding proteins, and DNA polymerases to discriminate between cisplatin–GG and oxaliplatin–GG adducts.
机译:区分顺铂-DNA加合物和奥沙利铂-DNA加合物的蛋白质被认为是这两种重要化学治疗剂在肿瘤范围,毒性和致突变性方面的差异的原因。但是,尚未确定这些加合物的差异蛋白质识别的结构基础,这对于设计更有效的铂类抗癌剂可能很重要。我们已经在AGGC序列背景下确定了顺铂-GG和未损坏的DNA十二聚体的高分辨率NMR结构,并将这些结构与奥沙利铂-GG结构在我们实验室先前确定的相同序列背景下进行了比较。这项结构研究允许首次直接比较在相同序列背景下以未破坏的DNA为参照的顺铂-GG DNA和奥沙利铂-GG DNA溶液结构。分别测定了顺铂-GG DNA和未损坏DNA的15个最低能量结构的非氢原子均方根均方根值,分别为0.81和1.21,表明结构收敛性良好。通过从最终平均结构反算获得的理论NOESY光谱与实验数据显示出极佳的一致性,表明最终结构与NMR数据一致。在顺铂-GG加合物和奥沙利铂-GG加合物之间观察到一些显着的构象差异,包括在5'G6•C19碱基对处的扣,在3'G7•C18碱基对处打开,在A5G6•T20C19碱基对处扭曲在G6G7•C19C18基座对台阶处滑动,扭曲,滚动,在G7C8•C18G17基座对台阶处滑动,G6G7二面角和整体弯曲角度。我们假设这些构象差异可能与各种DNA修复蛋白,DNA结合蛋白和DNA聚合酶区分顺铂-GG和奥沙利铂-GG加合物的能力有关。

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